分叉
几何学
剪应力
医学
解剖
数学
机械
物理
量子力学
非线性系统
作者
Tetsuo Sasaki,Yukinari Kakizawa,Masato Yoshino,Yasuhiro Fujii,Ikumi Yoroi,Yozo Ichikawa,Tetsuyoshi Horiuchi,Kazuhiro Hongo
出处
期刊:Neurosurgery
[Oxford University Press]
日期:2018-07-24
卷期号:85 (1): E31-E39
被引量:15
标识
DOI:10.1093/neuros/nyy387
摘要
Abstract BACKGROUND Hemodynamic factors, especially wall shear stress (WSS), are generally thought to play an important role in intracranial aneurysm (IA) formation. IAs frequently occur at bifurcation apices, where the vessels are exposed to the impact of WSS. OBJECTIVE To elucidate the relationship between bifurcation geometry and WSS for IA formation. METHODS Twenty-one bifurcation models varying in branch angles and branch diameters were made with 3-dimensional computer-aided design software. In all models, the value of maximum WSS (WSS MAX ), the area of high WSS (AREA), and the magnitude of wall shear force over AREA ( JOURNAL/neusg/04.03/00006123-201907000-00025/inline-formula1/v/2023-10-11T193152Z/r/image-jpeg ) were investigated by the steady-flow simulation of computational fluid dynamics. RESULTS On the basis of statistical analysis, WSS MAX tended to be high when the bifurcation angle and/or branch diameter was small. AREA and JOURNAL/neusg/04.03/00006123-201907000-00025/inline-formula2/v/2023-10-11T193152Z/r/image-jpeg significantly increase as the bifurcation and/or the branch angle became larger. CONCLUSION The magnitude of WSS strongly correlated with bifurcation geometry. In addition to high WSS, AREA and JOURNAL/neusg/04.03/00006123-201907000-00025/inline-formula3/v/2023-10-11T193152Z/r/image-jpeg were thought to affect IA formation. Observed bifurcation geometry may predict IA formation. Large branch angles and small branch may increase the risk of IA formation.
科研通智能强力驱动
Strongly Powered by AbleSci AI